2017A&A...604A..58H


Query : 2017A&A...604A..58H

2017A&A...604A..58H - Astronomy and Astrophysics, volume 604A, 58-58 (2017/8-1)

Parameterizing the interstellar dust temperature.

HOCUK S., SZUCS L., CASELLI P., CAZAUX S., SPAANS M. and ESPLUGUES G.B.

Abstract (from CDS):

The temperature of interstellar dust particles is of great importance to astronomers. It plays a crucial role in the thermodynamics of interstellar clouds, because of the gas-dust collisional coupling. It is also a key parameter in astrochemical studies that governs the rate at which molecules form on dust. In 3D (magneto)hydrodynamic simulations often a simple expression for the dust temperature is adopted, because of computational constraints, while astrochemical modelers tend to keep the dust temperature constant over a large range of parameter space. Our aim is to provide an easy-to-use parametric expression for the dust temperature as a function of visual extinction (AV) and to shed light on the critical dependencies of the dust temperature on the grain composition. We obtain an expression for the dust temperature by semi-analytically solving the dust thermal balance for different types of grains and compare to a collection of recent observational measurements. We also explore the effect of ices on the dust temperature. Our results show that a mixed carbonaceous-silicate type dust with a high carbon volume fraction matches the observations best. We find that ice formation allows the dust to be warmer by up to 15% at high optical depths (AV>20mag) in the interstellar medium. Our parametric expression for the dust temperature is presented as Td=[11+5.7xtanh(0.61-log10(AV)]χuv1/5.9, where χuv is in units of the Draine (1978ApJS....36..595D) UV field.

Abstract Copyright: © ESO, 2017

Journal keyword(s): methods: analytical - radiative transfer - astrochemistry - dust, extinction - opacity - opacity

Simbad objects: 8

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Number of rows : 8
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 LDN 1389 MoC 04 04 38 +56 56.2           ~ 92 0
2 LDN 1495 DNe 04 18.1 +27 37           ~ 366 1
3 LDN 1506 DNe 04 20.0 +25 17           ~ 78 0
4 NAME Taurus Complex SFR 04 41.0 +25 52           ~ 4416 0
5 LDN 1544 DNe 05 04 16.6 +25 10 48           ~ 863 0
6 LDN 1689B DNe 16 34 42.1 -24 36 11           ~ 167 0
7 LDN 57 DNe 17 22 38.2 -23 49 34           ~ 314 1
8 LDN 1262 MoC 23 25 47 +74 17.6           ~ 134 0

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